IP Library Granted Patent US 9,343,494
Granted Patent B2
US 9,343,494 · App. 13/411,103 · Granted May 17, 2016

Light guided pixel configured for emissions detection and comprising a guide layer with a wavelength selective filter material and a light detector layer

Inventors: Seung Ah Lee (Pasadena, CA); Guoan Zheng (Pasadena, CA); Benjamin Judkewitz (Los Angeles, CA); Shuo Pang (Pasadena, CA); Jigang Wu (Shanghai, CN); Changhuei Yang (Pasadena, CA)
Assignee: California Institute of Technology
H01L27/14629H01L27/14621
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Quick Facts
Patent No.
US 9,343,494
App. No.
13/411,103
Granted
May 17, 2016
Kind
B2
Abstract

A light guided pixel having a guide layer and a light detector layer. The guide layer has a light guide. The light detector layer has a light detecting element that receives light channeled by the light guide. The light guide may include a filter for channeling emissions to the light detecting element.

Claims (56)

1. A light guided pixel configured for emissions detection, comprising:

a guide layer comprising a light guide through an opaque or reflective material layer, the light guide comprising first and second opposing ends, wherein the first end is configured to receive incident light from outside the guide layer; and

a light detector layer comprising a light detecting element proximal the second end of the light guide, the light detecting element configured to detect light emissions,

wherein the detected light emissions received at the first end of the light guide from outside the guide layer are channeled to the second end and to the light detecting element, and

wherein the light guide comprises a wavelength selective filter material for absorbing excitation light and passing light emissions based on wavelength selective properties of the wavelength selective filter material, wherein the absorbed excitation light and the passed light emissions are received from outside the first end of the light guide.

2. The light guided pixel configured for emissions detection of claim 1 , wherein the light guide comprises

a light transmissive region through the opaque or reflective material layer of the guide layer and

a reflective wall,

wherein the light transmissive region comprises the wavelength selective filter material.

3. The light guided pixel configured for emissions detection of claim 1 , further comprising a transparent layer between the guide layer and the light detector layer.

4. A light guided pixel device configured for emissions imaging, comprising:

a guide layer comprising a plurality of light guides through an opaque or reflective material, each light guide comprising first and second opposing ends, wherein each first end is configured to receive incident light from outside the guide layer, wherein the guide layer further comprises an inter-pixel separation of the opaque or reflective material between adjacent light guides of the plurality of light guides; and

a light detector layer comprising a plurality of light detecting elements, each light detecting element configured to detect light emissions received from outside the guide layer at the first end of at least one light guide of the plurality of light guides,

wherein the detected light emissions are channeled from each first end to each second end of the at least one light guide and to the light detecting element, and

wherein one or more of the light guides comprises a wavelength selective filter material for absorbing excitation light and passing light emissions based on wavelength selective properties of the wavelength selective filter material, wherein the absorbed excitation light and the passed light emissions are received from outside the first end of each of the one or more light guides.

5. The light guided pixel device configured for emissions imaging of claim 4 , wherein each of the light guides comprises

a light transmissive region through the opaque or reflective material layer of the guide layer and

a reflective wall,

wherein the light transmissive region comprises the wavelength selective filter material.

6. The light guided pixel device configured for emissions imaging of claim 4 , further comprising a transparent layer between the guide layer and the light detector layer.

7. The light guided pixel device configured for emissions imaging of claim 4 , further comprising a processor configured to generate an emissions image of a specimen located between an illumination source and the guide layer, wherein the emissions image is associated with light emissions detected by the plurality of light detecting elements.

8. The light guided pixel device configured for emissions imaging of claim 4 ,

wherein the light detector layer further comprises a processor configured to generate an emissions image of a specimen provided between an illumination source and the guide layer, and

wherein the emissions image is associated with light emissions detected by the plurality of light detecting elements.

9. The light guided pixel device configured for emissions imaging of claim 4 , wherein the plurality of light detecting elements are arranged in a two-dimensional array.

10. The light guided pixel device configured for emissions imaging of claim 4 , further comprising a processor configured to generate a sequence of sub-pixel shifted projection images of a specimen located between a scanning illumination source and the guide layer, the sequence of sub-pixel shifted projection images corresponding to a plurality of scanning locations of the illumination source, the processor further configured to generate a sub-pixel resolution image of the specimen based on the sequence of sub-pixel shifted projection images.

11. The light guided pixel device configured for emissions imaging of claim 4 ,

wherein the light detector layer further comprises a processor configured to generate a sequence of sub-pixel shifted projection images of a specimen located between a scanning illumination source and the guide layer, the sequence of sub-pixel shifted projection images corresponding to a plurality of scanning locations of the illumination source,

wherein the processor is further configured to generate a sub-pixel resolution image of the specimen based on the sequence of sub-pixel shifted projection images.

12. A light guided pixel system configured for emissions imaging comprising:

a light guided pixel device comprising

a guide layer comprising a plurality of light guides through an opaque or reflective material, each light guide comprising first and second opposing ends, wherein each first end is configured to receive incident light from outside the guide layer, wherein the guide layer further comprises an inter-pixel separation of the opaque or reflective material between adjacent light guides of the plurality of light guides; and

a light detector layer comprising a plurality of light detecting elements, each light detecting element configured to detect light emissions received from outside the guide layer at the first end of at least one light guide of the plurality of light guides, wherein the detected light emissions are channeled from each first end to each second end of the at least one light guide and to the light detecting element, wherein the light transmissive region comprises a wavelength selective filter material for absorbing excitation light and passing emissions based on wavelength selective properties of the wavelength selective filter material, wherein the absorbed excitation light and the passed light emissions are received from outside the first end of the light guide; and

a processor in communication with the plurality of light detecting elements, the processor configured to generate one or more projection emissions images of a specimen located between an illumination source and the guide layer, the one or more projection emissions images based on data received from the plurality of light detecting elements and associated with the light emissions detected by the plurality of light detecting elements.

13. The light guided pixel system configured for emissions imaging of claim 12 , wherein each light guide comprises

a light transmissive region through the opaque or reflective material layer of the guide layer and

a reflective wall,

wherein the light transmissive region comprises the wavelength selective filter material.

14. The light guided pixel system configured for emissions imaging of claim 12 , further comprising a transparent layer between the guide layer and the light detector layer.

15. The light guided pixel system configured for emissions imaging of claim 12 ,

wherein the illumination source is configured to provide illumination from a plurality of scanning locations at different scanning times,

wherein the one or more projection images is a sequence of sub-pixel shifted projection images corresponding to the plurality of scanning locations, and

wherein the processor is further configured to generate a sub-pixel resolution image of the specimen based on the sequence of projection images.

16. A light guided pixel system configured for emissions imaging, the light guided pixel system comprising:

a guide layer comprising a plurality of light guides through an opaque or reflective material, each light guide comprising first and second opposing ends, wherein each first end is configured to receive incident light from outside the guide layer, wherein the guide layer further comprises an inter-pixel separation of the opaque or reflective material between adjacent light guides of the plurality of light guides;

a light detector layer comprising a plurality of light detecting elements;

an array of light guided pixels, each light guided pixel comprising a light guide of the plurality of light guides and a corresponding light detecting element of the plurality of light detecting elements, the light detecting element configured to detect light emissions received from outside the guide layer at the first end of at least one light guide of the plurality of light guides, wherein the detected light emissions are channeled from each first end to each second end of the at least one light guide and to the light detecting element, wherein each light guide of the plurality of light guides further comprises a wavelength selective filter material for absorbing excitation light and passing light emissions based on wavelength selective properties of the wavelength selective filter material, wherein the absorbed excitation light and the passed light emissions are received from outside the first end of each light guide; and

a processor configured to generate one or more projection emissions images of a specimen provided between an illumination source and the guide layer, the one or more emissions images associated with the light emissions detected by the plurality of light detecting elements.

17. The light guided pixel system configured for emissions imaging of claim 16 ,

wherein the illumination source is configured to provide illumination from a plurality of scanning locations at different scanning times,

wherein the one or more projection images is a sequence of sub-pixel shifted projection images corresponding to the plurality of scanning locations, and

wherein the processor is further configured to generate a sub-pixel resolution image of the specimen based on the sequence of projection images.

18. The light guided pixel configured for emissions detection of claim 1 , wherein the light guide is configured to channel the light emissions to a center area of the light detecting element.

19. The light guided pixel device configured for emissions imaging of claim 4 , wherein each light guide is configured to channel the light emissions to a center area of the corresponding light detecting element of the plurality of light detecting elements.

20. The light guided pixel configured for emissions detection of claim 1 , further comprising a multilayer body comprising the light guide layer disposed on the light detector layer.

21. The light guided pixel device configured for emissions imaging of claim 4 , further comprising a multilayer body comprising the light guide layer disposed on the light detector layer.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2018
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: LONDON SCHOOL OF HYGIENE & TROPICAL MEDICINE
Reel/Frame 046105/0166 →
CONFIRMATORY LICENSE Recorded Jul 16, 2013
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 030806/0053 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2012
From: LEE, SEUNG AH; ZHENG, GUOAN; JUDKEWITZ, BENJAMIN; PANG, SHUO; WU, JIGANG; YANG, CHANGHUEI
To: CALIFORNIA INSTITUTE OF TECHOLOGY
Reel/Frame 028233/0548 →
Continuity (2)
Provisional Application 61448964 · Mar 3, 2011
Related Publication 20120223214A1 · Sep 6, 2012